February 2026 in “Journal of Cellular Physiology” This review discusses how TGF-β3 influences fate decisions of various stem cell types, highlighting its role in proliferation, differentiation, and cell death through classical and non-classical signalling pathways.
October 2025 in “Journal of the Endocrine Society” This research review observed that topical hormone replacement therapy, particularly estradiol and estradiol-testosterone combinations, significantly increased Type I and III collagen synthesis in the skin of postmenopausal women, suggesting benefits against collagen loss-related skin aging effects such as reduced elasticity and increased dryness.
September 2025 in “Stem Cells Translational Medicine” This study found that exosomes from human umbilical cord stem cells, pretreated with lithium chloride, significantly enhance hair regeneration in mice by activating the Wnt signaling pathway through miR-146a-5p.
July 2025 in “Pharmaceutics” This study found that Annexin A5 significantly reduced fibrosis and inflammation in both preventive and therapeutic contexts in a bleomycin-induced localized scleroderma mouse model, demonstrating its potential anti-fibrotic and anti-inflammatory effects for treating fibrotic diseases.
April 2019 in “The journal of investigative dermatology/Journal of investigative dermatology” This study in mice suggests that defects in hair follicles with mesenchymal TSC2 disruption may result from an impaired TGFβ1 response, indicating a potential novel treatment approach for tuberous sclerosis complex.
December 2017 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that Endoglin is crucial for proper hair follicle cycling and the activation of hair follicle stem cell niches, based on its role in the feedback crosstalk between Wnt/β-catenin and Bmp/Smad signals.
This study suggests that Crinum asiaticum var. japonicum extract and its component norgalanthamine may promote hair growth by inhibiting 5α-reductase activity and the TGF-β1-induced pathway.
January 2016 in “Georg Thieme Verlag eBooks” Facelift surgery has evolved to focus on natural results and safety, with patient selection and postoperative care being key to success.
August 2011 in “Planta Medica” This study suggests that the hair growth-promoting effects of 4-O-methylhonokiol may be linked to its ability to modulate TGF-β-induced cell cycle arrest and oxidative stress in HaCaT cells.
April 2020 in “Journal of The American Academy of Dermatology” In this study, to address long wait times for alopecia specialists, researchers implemented shared medical appointments for women with female pattern hair loss, modeled on formats previously used for conditions like acne and vitiligo.
20 citations
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September 2010 in “Cell Cycle” This study reports that in MRL mice, loss of p53 does not impair ear regeneration, suggesting p21's potential role in this process may involve the Tgfb/Smad pathway.
3 citations
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February 2014 in “Atlas of the Oral and Maxillofacial Surgery Clinics” This article discusses short scar facelift techniques for facial rejuvenation without reporting new clinical results, highlighting their appeal due to reduced morbidity, shorter scars, and less downtime.
July 2026 in “Marine Drugs” In this mouse study, researchers found that orally administered low-molecular-weight fish collagen peptides significantly improved hair regrowth by both enhancing growth-promoting pathways and reducing inhibitory mechanisms.
April 2024 in “Biomedicine & pharmacotherapy” This study observed that pilose antler extract promoted hair growth in mice with androgenetic alopecia by stimulating the hair follicle growth cycle via the SHH/GLI pathway activation and BMP/Smad pathway suppression.
21 citations
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May 2018 in “Journal of Cosmetic Dermatology” This study found that costunolide promotes hair growth in both lab-cultured human hair follicle cells and in live mice by modulating growth factor pathways.
13 citations
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November 2015 in “Gene” In this study, TGFβR I was more highly expressed in alpaca ear skin than in back skin, suggesting it may inhibit coat hair growth, with let-7b downregulating TGFβR I protein through transcriptional repression.
44 citations
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January 2013 in “BMC Dermatology” This study found that TGFβ signaling is essential for keeping sebocytes undifferentiated by reducing lipid-related gene expression, using a novel human sebocyte culture model.
9 citations
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January 2023 in “International Journal of Biological Sciences” This study suggests that CTHRC1, a protein expressed in cardiac fibroblasts, may improve wound repair and prevent cardiac rupture after myocardial infarction by activating a specific signaling pathway.
6 citations
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May 2022 in “Journal of Cosmetic Dermatology” In this study, Lagerstroemia indica extract was found to significantly promote hair growth and prevent hair loss in human trials, likely through the regulation of specific signaling pathways, indicating its potential as a cosmetic treatment for hair loss prevention.
September 2026 in “Stem Cell Reviews and Reports” Bulge progenitor cells show promise for regenerating hair follicles and increasing hair density.
September 2026 in “International Journal of Nanomedicine” This review discusses the potential of extracellular vesicles as a minimally invasive treatment for androgenetic alopecia, but emphasizes that most research is still in preclinical stages and more clinical trials are needed.
August 2026 in “Stem Cell Research & Therapy” This review found that while MSC and EV-based therapies could potentially improve skin and hair rejuvenation, their clinical efficacy is limited by inconsistent study designs and a lack of standardization.
August 2026 in “International Journal of Nanomedicine” This review highlights the potential of exosome-based therapies for androgenetic alopecia by modulating key signaling pathways in hair follicles, suggesting a promising treatment option that requires further research to validate long-term safety and efficacy.
August 2026 in “DOAJ (DOAJ: Directory of Open Access Journals)” This review summarizes the potential of exosome-based therapies as a promising treatment for androgenetic alopecia, emphasizing their role in modulating key signaling pathways, but highlights the need for further evidence to confirm their efficacy and safety.
August 2026 in “Clinical Cosmetic and Investigational Dermatology” This study highlights the potential of stem cell-derived extracellular vesicles to treat UV-induced skin damage by modulating key signaling pathways, though challenges like EV composition variability and skin barrier penetration remain, underscoring the need for further research into optimized delivery methods for effective therapies.
July 2026 in “Periodontology 2000” This study reviewed exosome-mediated interventions for alopecia, finding that they enhance hair regeneration by stimulating key pathways and improving hair properties, with clinical studies showing increased hair density and patient satisfaction, though further trials are needed for widespread clinical use.
June 2026 in “Journal of Nanobiotechnology” This study reported that human umbilical cord mesenchymal stem cell-derived exosomes may promote hair regeneration and thickness in androgenic alopecia by modulating cellular pathways in hair growth, including increasing hair density and diameter, as observed in a mouse model and an exploratory clinical trial.
June 2026 in “Preprints.org” This review examines the mechanisms behind pathological scarring like hypertrophic scars and keloids, highlights the limitations of current treatments, and suggests that biomaterial-enabled delivery of anti-fibrotic statins, such as atorvastatin, may offer a promising therapeutic avenue for managing these scars.
March 2026 in “Molecules” In this laboratory study, researchers reported that Camellia sinensis seed flavonoids significantly reduced oxidative stress and inflammation in UV-irradiated skin cells by modulating key signaling pathways, highlighting its potential as a skincare ingredient for anti-inflammatory and anti-photoaging benefits.
January 2026 in “Burns & Trauma” This study reported that NLRP3 plays complex roles in wound healing by initially promoting inflammation and delaying repair, but later enhancing structural restoration through distinct signaling pathways, highlighting its potential as a therapeutic target for controlling inflammation and regeneration phases.